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A novel role for reactive oxygen species in the regulation of RhoA; implications for endothelial permeability and leukocyte transmigration

机译:活性氧在RhoA调节中的新作用;对内皮渗透性和白细胞迁移的影响

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摘要

The endothelial lining of the vasculature plays a critical role in regulating the passage of fluid, macromolecules, and cells between the blood and surrounding tissues. Vascular permeability is tightly regulated and is modulated during both physiological and pathological situations. Our laboratory is interested in the mechanisms which regulate vascular permeability and the transmigration of leukocytes during inflammation. The migration of leukocytes across the endothelial barrier is called "leukocyte transendothelial migration" (TEM). Deciphering the mechanisms which regulate TEM is important to understanding and managing inflammatory diseases.;My interest in TEM is focused on pathways which involve small GTPases. My specific interest is in the role of Rho GTPases and their regulation by reactive oxygen species (ROS) during leukocyte TEM. Although ROS have been largely seen as mediators of oxidative damage, more recently, ROS have been recognized as necessary components of cell signaling pathways. Importantly, ROS have been shown to play an important role in regulating vascular permeability and TEM.;In this dissertation, I show that physiological levels of ROS can directly activate RhoA in cells. In vitro studies had previously identified two critical cysteine residues in the nucleotide binding pocket of RhoA that are oxidatively modified by ROS. My work showed that this oxidative regulation of RhoA can occur in a cellular context. Before these studies, the regulation of small GTPases had almost exclusively focused on regulatory proteins. Importantly, my work identifies direct oxidative modification as a novel way to regulate RhoA activity.;I extended this work by investigating the regulation of RhoA by ROS in the context of leukocyte TEM. Based on these findings and my previous work, I hypothesized that leukocyte adhesion to endothelial cells initiates ROS generation and the direct activation of RhoA to promote leukocyte TEM. In preliminary studies, I found that crosslinking of a cell adhesion molecule (ICAM-1) stimulates RhoA and Rac1 activation. In addition the activation of RhoA appears to be dependent on ROS, as seen by studies of redox-insensitive mutants. The work presented in this dissertation lays the framework for future studies on the role of ROS during leukocyte adhesion and TEM.
机译:脉管系统的内皮衬在调节流体,大分子和细胞在血液与周围组织之间的通过方面起着至关重要的作用。在生理和病理情况下,血管通透性受到严格调节并受到调节。我们的实验室对炎症过程中调节血管渗透性和白细胞迁移的机制感兴趣。白细胞穿过内皮屏障的迁移被称为“白细胞跨内皮迁移”(TEM)。阐明调节TEM的机制对于理解和控制炎症疾病很重要。我对TEM的兴趣集中在涉及小GTP酶的途径上。我的特别兴趣是Rho GTPases的作用及其在白细胞TEM中受活性氧(ROS)的调节。尽管ROS在很大程度上已经被认为是氧化损伤的介体,但是最近,ROS已经被认为是细胞信号通路的必要组成部分。重要的是,ROS已被证明在调节血管通透性和TEM中起着重要的作用。本论文证明了ROS的生理水平可以直接激活细胞中的RhoA。体外研究以前已经确定了RhoA核苷酸结合袋中的两个关键半胱氨酸残基,这些残基被ROS氧化修饰。我的工作表明,RhoA的这种氧化调节可以在细胞环境中发生。在进行这些研究之前,小的GTP酶的调节几乎完全集中在调节蛋白上。重要的是,我的工作将直接氧化修饰识别为调节RhoA活性的一种新方法。我通过研究白细胞TEM中ROS对RhoA的调节来扩展这项工作。基于这些发现和我以前的工作,我假设白细胞与内皮细胞的粘附会启动ROS的产生,并直接激活RhoA以促进白细胞TEM。在初步研究中,我发现细胞粘附分子(ICAM-1)的交联会刺激RhoA和Rac1激活。另外,如对氧化还原不敏感的突变体的研究所见,RhoA的激活似乎依赖于ROS。本文的工作为以后ROS在白细胞粘附和TEM中的作用奠定了基础。

著录项

  • 作者

    Aghajanian, Amir.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Cellular biology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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